Protection assembly, protection device and electronic equipment

The design of detachable protective components and a protective frame solves the problem of bumps and knocks when transporting large electronic devices in their bare state, protecting the edges and screen of the device and reducing transportation risks and space requirements.

CN223495206UActive Publication Date: 2025-10-31HUAWEI TECH CO LTD
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Patent Information

Application Number
CN202422284891.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-10-31
Estimated Expiration
2034-09-14

AI Technical Summary

Technical Problem

Large electronic devices lack effective protection when moved into a home in their bare state, making them prone to bumps and damage. Furthermore, stress concentration during transport can easily lead to breakage.

Method used

A detachable protective component is provided, including a housing and a protective frame. The protective frame can be unfolded and stored in the housing, bent and installed on the edge of the device, and combined with a protective plate and a buffer to protect the edge and screen of the device.

Benefits of technology

It effectively avoids damage to the equipment edges, reduces the space required for handling, disperses handling force, reduces the risk of breakage, and ensures the integrity of the equipment during handling.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a protection assembly, a protection device and electronic equipment. The protection assembly comprises a box body and a protection frame. The protection frame is detachably arranged in the box body and used for being switched between an unfolded state and a bent state. When the protection frame is in the unfolded state, the protection frame is contained in the box body. When the protective frame is in the bent state, the protective frame covers at least part of the edge of the electronic equipment. In the embodiment of the invention, the protection frame can be stored in the box body together with the machine body in an unfolded state, and can be integrally transported and carried along with the box body. When the machine body needs to be carried to the home, the protective frame can be taken out of the box body and installed at the edge of the electronic equipment to protect the edge, and the size of the protective frame is far smaller than that of the box body, so that the carrying space can be reduced, the machine body can be carried to the home conveniently, and the collision risk is reduced; a carrier can hold the protective frame to carry out carrying operation, carrying force can be dispersed through the protective frame, and therefore the situation that the electronic equipment is broken due to local stress concentration can be avoided.
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Description

Technical Field

[0001] This application relates to the field of electronic product protection technology, specifically to a protective component, protective device, and electronic device. Background Technology

[0002] As users' demands for a better TV viewing experience gradually increase, the market share of large-screen TVs (85 inches and above) is growing year by year. However, the larger the TV size, the more difficult it is to deliver it to the home with its original packaging. Therefore, the packaging can usually be removed before delivery to reduce the volume and allow the bare TV to be moved into the home.

[0003] However, when moving a bare unit into a house, it is usually not protected and is very easy to be bumped and damaged. Utility Model Content

[0004] In view of this, this application provides a protective component, a protective device, and an electronic device to provide protection for the bare unit when it is brought into the home, preventing the bare unit from being damaged by bumps and knocks.

[0005] In a first aspect, this application provides a protective component including a housing and a protective frame. The protective frame is detachably disposed within the housing and is configured to switch between an unfolded state and a bent state. When the protective frame is in the unfolded state, it is housed within the housing. When the protective frame is in the bent state, it covers at least a portion of the edge of the electronic device.

[0006] In this embodiment, the protective frame can be stored in the box along with the main body in its unfolded state, allowing for transport and handling as a whole. When the main body needs to be moved into the home, the protective frame can be removed from the box and installed on the edge of the main body. This provides protection for the edges of the main body, effectively preventing bumps and knocks during transport. Furthermore, the protective frame is much smaller than the box, reducing the transport space required. This facilitates smooth transport, reduces the risk of bumps and knocks, and protects the edges of the main body from damage. Additionally, the person moving the main body can hold the protective frame, distributing the force across it rather than directly onto the edges, thus preventing stress concentration and breakage.

[0007] In one possible implementation, the protective frame includes a first segment and a second segment, the second segment being foldably connected to the end of the first segment. In the folded state, the first segment covers at least a portion of a first edge on one side of the electronic device, and the second segment covers at least a portion of a second edge on the other side of the electronic device, the first edge being adjacent to the second edge. Before the electronic device is moved into the home, the protective frame is in an unfolded state and can be stored in a housing. For example, the sum of the lengths of the first and second segments is less than the length of the housing, allowing the first and second segments to be collinear in the unfolded state. This maximizes storage space within the housing without changing its dimensions; for example, the protective frame can be stored inside the housing on one side of the electronic device. When the electronic device needs to be moved into the home, the electronic device and the protective frame can be removed from the housing, and the second segment can be manually bent relative to the first segment so that the shape of the first and second segments matches the contour of the electronic device and covers the corresponding edges of the electronic device, facilitating operation.

[0008] In one possible implementation, two second segments are provided, one at each end of the first segment, and the other covering at least a portion of the edges of opposite sides of the electronic device. Specifically, the two second segments cover at least a portion of the two long sides of the electronic device, thereby connecting the first segment and the two second segments to three adjacent edges of the electronic device, ensuring the stability of the protective frame installation. Furthermore, when the electronic device needs to be placed on the ground or table during transport, the second segments can also provide support, preventing direct contact between the electronic device and the ground or table, thus reducing the risk of edge damage.

[0009] In one possible implementation, the protective frame is integrally formed, meaning that the first and second sections can be directly formed during the processing of the protective frame, thereby ensuring the reliability of the structure while simplifying the process and saving costs.

[0010] In one possible implementation, the second segment is flexibly connected to the first segment via a connector. The first and second segments are separate structures, meaning they can be manufactured independently, allowing for more flexible storage within the housing. Furthermore, the connector can be glue, rivets, staples, etc., which facilitate user operation and ensure a reliable connection between the first and second segments.

[0011] In one possible implementation, in the unfolded state, a notch is provided between the first segment and the second segment, through which the second segment bends relative to the first segment. Specifically, the notch can be directly formed during the molding process of the protective frame, with the first and second segments formed on either side of the notch. The protective frame uses less material at the notch, making it easier to bend at this point; that is, the second segment can bend relative to the first segment at the notch, thus facilitating bending by the user.

[0012] In one possible implementation, the protective device further includes a protective plate. When the protective frame is in the bent state, the protective plate is connected to the protective frame and covers the display surface of the electronic device's screen. When the protective frame is in the unfolded state, the protective frame and the protective plate can be stored separately in a housing. When the protective frame is installed on the electronic device, the protective plate covers the display surface of the screen to protect the screen and prevent scratches during transport. The protective frame can also cover the edges of the electronic device to prevent damage from impacts.

[0013] In one possible implementation, the protective frame includes a first mounting portion and a second mounting portion. In the unfolded state, the first mounting portion and the second mounting portion form an angle. In the bent state, the first mounting portion is connected to the protective plate, and the second mounting portion covers at least a portion of the side surface of the electronic device. During the assembly of the protective device, the surface of the first mounting portion facing the screen of the electronic device is connected to the protective plate to achieve a fixed connection between the protective plate and the protective frame. When installing the protective device onto the electronic device, the protective plate can be placed over the screen, allowing the second mounting portion to cover at least a portion of the side surface of the electronic device. Thus, the edges of the electronic device can be covered between the first and second mounting portions, effectively preventing damage to the edges of the electronic device from impacts.

[0014] In one possible implementation, the first mounting part is bonded to the protective plate, thereby facilitating the assembly of the protective plate and the protective frame.

[0015] In one possible implementation, the protective frame includes a first mounting part and a second mounting part. In the unfolded state, the first mounting part and the second mounting part are located on the same plane, that is, the surfaces of the first mounting part and the second mounting part are coplanar, thereby reducing the thickness of the protective frame and making it easier to store in the box.

[0016] In one possible implementation, the protective frame includes a third mounting portion, a fourth mounting portion, and a fifth mounting portion. The third and fourth mounting portions are respectively disposed at opposite ends of the fifth mounting portion, and an installation space is formed between the third, fourth, and fifth mounting portions. In the bent state, the protective frame covers at least a portion of the edge of the electronic device through the installation space. When the protective frame is installed on the electronic device, the edge of the protective plate can be located within the installation space and can be connected to either the third or fourth mounting portion. The protective frame can cover at least a portion of the edge of the electronic device through the installation space, and the protective plate can cover the screen. The protective frame can be clamped on both sides of the electronic device along its thickness direction by the third and fourth mounting portions. The third and fourth mounting portions can be relatively fixed by static friction with the electronic device, thereby facilitating the installation and fixing of the protective frame on the electronic device while ensuring installation stability.

[0017] In one possible implementation, in the unfolded state, the third, fourth, and fifth mounting portions are all located on the same plane, meaning their surfaces are coplanar. This minimizes the thickness of the protective frame, facilitating storage. When the protective frame needs to be installed on an electronic device, the third and fourth mounting portions can be appropriately bent relative to the fifth mounting portion, forming a "U" or near-"U" shape. This facilitates installation of the protective frame onto the edge of the electronic device, providing reliable edge protection. Alternatively, in the unfolded state, the third and fourth mounting portions form an angle with the fifth mounting portion, eliminating the need for manual bending of the third and fourth mounting portions and simplifying the installation of the protective frame onto the electronic device.

[0018] In one possible implementation, the protective plate has multiple cavities. The protective plate is more prone to deformation at the locations of these cavities. Therefore, when the side of the electronic device with the screen is subjected to an external impact, the cavities on the protective plate can deform to absorb and disperse the impact force, thereby preventing excessive impact force from being transmitted to the screen and protecting it. The protective frame can then cover at least part of the edges of the electronic device to protect its edges.

[0019] In one possible implementation, the protective plate is connected to the electronic device via a connector, thereby ensuring the reliability of the protective device's installation on the electronic device and preventing the protective device from falling off.

[0020] In one possible implementation, the connector is an adhesive tape or wire harness, which facilitates the connection and positioning of the protective device and the electronic equipment.

[0021] In one possible implementation, the protective device further includes a buffer connected to the protective frame. In the bent state, the protective frame abuts against the electronic device through the buffer. The buffer can disperse the impact force transmitted from outside the protective device to the electronic device, thereby preventing the electronic device from being broken due to excessive impact.

[0022] In one possible implementation, the buffer is connected to the second mounting portion, which abuts against at least a portion of the side surface of the electronic device via the buffer. During transport, the electronic device is typically moved with one side surface facing the transport direction, making it more susceptible to collisions with obstacles in that direction. Therefore, in this embodiment, by placing the buffer on the side surface of the electronic device, protection of the side surface is enhanced, impact forces are mitigated, and the integrity of the electronic device is ensured during transport.

[0023] In one possible implementation, the electronic device further includes a positioning component disposed within the housing. The positioning component has a first storage cavity for housing the electronic device. A second storage cavity is also provided on the positioning component, and in the unfolded state, the protective frame is housed within the second storage cavity. The positioning component provides support, positioning, and shock absorption for the electronic device, reducing impact during transportation and handling before installation and ensuring the device's quality. The dimensions of the positioning component and housing can be designed according to the dimensions of the electronic device, and both the first and second storage cavities can be formed from the same material as the positioning component, eliminating the need to occupy space outside the positioning component. This allows for the storage of the protective frame without altering the dimensions of the housing and positioning component.

[0024] In one possible implementation, the positioning member includes multiple connecting portions that enclose the first storage cavity. At least one of the connecting portions is provided with a second storage cavity. Exemplarily, the multiple connecting portions may be a first part, a second part, a third part, and a fourth part, respectively. The first part and the second part are arranged opposite each other along the length direction of the electronic device, and the third part and the fourth part are arranged opposite each other along the width direction of the electronic device. The first part, the second part, the third part, and the fourth part enclose the first storage cavity. At least one of the first part, the second part, the third part, and the fourth part is provided with the second storage cavity. The first part, the second part, the third part, and the fourth part can be independently manufactured components. The first part, the second part, the third part, and the fourth part can be respectively installed at the edge of the electronic device to protect the edge of the electronic device, while also providing support and shock absorption, ensuring the integrity of the electronic device during transportation and handling before delivery. Furthermore, the second storage cavity can be a groove structure formed on the positioning member. The second storage cavity does not need to occupy space outside the positioning member, enabling storage without changing the dimensions of the positioning member and the housing.

[0025] In one possible implementation, at least two protective frames are provided. In the unfolded state, multiple components of the at least two protective frames are housed in the second storage cavity, thereby facilitating the removal of the entire protective frame from the positioning member without requiring disassembly at different locations on the positioning member, thus simplifying operation. Alternatively, at least two protective frames are provided, and the positioning member is further provided with a third storage cavity. The at least two protective frames are respectively housed in the second storage cavity and the third storage cavity. For example, when there are two protective frames and one second storage cavity and one third storage cavity, one protective frame can be housed in the second storage cavity, and the other protective frame can be housed in the third storage cavity, thus allowing for more flexible storage of the protective frames.

[0026] In one possible implementation, at least two protective frames are provided, and in the bent state, at least two of the protective frames are positioned on opposite sides of the electronic device. During handling, the handler can hold the protective frames on opposite sides of the electronic device, thereby facilitating handling. In some embodiments, multiple protective frames may be provided, and each edge of the electronic device can be wrapped by a corresponding protective frame, thereby ensuring that the edges of the electronic device are not damaged by impacts.

[0027] Secondly, embodiments of this application also provide a protective device, wherein the protective device includes a positioning member and a protective assembly provided in the first aspect of this application, the positioning member being detachably disposed within the housing of the protective assembly. The positioning member is provided with a second storage cavity, and in the unfolded state, the protective frame of the protective assembly is stored within the second storage cavity.

[0028] Thirdly, embodiments of this application also provide an electronic device with packaging, comprising a body and a protective component provided in the first aspect of this application, wherein the body is detachably disposed within the housing of the protective component. When the protective frame of the protective component is in a bent state, the protective frame covers at least a portion of the edge of the body.

[0029] It should be understood that the above general description and the following detailed description are merely exemplary and do not limit this application. Attached Figure Description

[0030] To more clearly illustrate the technical solutions of the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0031] Figure 1 This is a schematic diagram of the structure of the electronic device provided in the embodiments of this application;

[0032] Figure 2 An exploded view showing the interaction between the protective device and electronic equipment provided in the embodiments of this application;

[0033] Figure 3 A schematic diagram showing the protective device provided in this application being installed on an electronic device;

[0034] Figure 4 Exploded view of the protective device provided in the embodiments of this application in the deployed state;

[0035] Figure 5 A schematic diagram of the assembly of the protective device provided in the embodiments of this application in a bent state;

[0036] Figure 6 An exploded view of the protective device in the electronic device provided in the embodiment of this application in a bent state;

[0037] Figure 7 A cross-sectional view of the protective plate in the protective device provided in the embodiments of this application;

[0038] Figure 8 A front view of a protective device provided in one embodiment of this application;

[0039] Figure 9 A front view of a protective device provided in another embodiment of this application;

[0040] Figure 10 This is a schematic diagram of the protective frame in the unfolded state of a protective device provided in one embodiment of this application.

[0041] Figure 11 This is a schematic diagram of the structure of the protective frame in the bent state in the protective device provided in the embodiments of this application;

[0042] Figure 12 A front view of a protective device provided in another embodiment of this application;

[0043] Figure 13 A front view of the protective frame in the protective device provided in the embodiments of this application;

[0044] Figure 14 A schematic diagram of the protective frame in the unfolded state in a protective device provided in another embodiment of this application;

[0045] Figure 15 A schematic diagram of the protective frame in the unfolded state in a protective device provided in another embodiment of this application;

[0046] Figure 16 for Figure 3 Enlarged view at point A;

[0047] Figure 17 A schematic diagram of the structure of the protective frame in a bent state in a protective device provided in one embodiment of this application;

[0048] Figure 18 A schematic diagram of the structure of the protective frame in a bent state in a protective device provided in another embodiment of this application;

[0049] Figure 19 for Figure 18 A magnified view at point B;

[0050] Figure 20 A schematic diagram showing a protective device installed on an electronic device according to another embodiment of this application;

[0051] Figure 21 This is a schematic diagram of the positioning element in the protective device provided in the embodiments of this application;

[0052] Figure 22 An exploded view of a positioning element in an electronic device provided in an embodiment of this application;

[0053] Figure 23 This is a schematic diagram of the structure of the connecting portion on the positioning member in a protective device provided in one embodiment of this application;

[0054] Figure 24 An exploded view of the protective frame and positioning element in a protective device provided in one embodiment of this application;

[0055] Figure 25 This is a schematic diagram of a protective device and electronic equipment during the storage process, according to one embodiment of this application.

[0056] Figure label:

[0057] 1-Electronic devices;

[0058] 11-screen;

[0059] 12-Shell;

[0060] 1a - Long side;

[0061] 1b - Wide side;

[0062] 2-Protective components;

[0063] 21-Protective frame;

[0064] 211 - First paragraph;

[0065] 212 - Second paragraph;

[0066] 213-Gap;

[0067] 214 - First Installation Section;

[0068] 215 - Second Installation Section;

[0069] 216 - Third Installation Department;

[0070] 217-Fourth Installation Department;

[0071] 218 - Fifth Installation Department;

[0072] 22-Protective plate;

[0073] 221-Cavity;

[0074] 23-Double-sided tape;

[0075] 24-Buffer components;

[0076] 25 - Connector;

[0077] 26 - Box;

[0078] 27-Positioning component;

[0079] 271 - Part One;

[0080] 272 - Part Two;

[0081] 273 - Part Three;

[0082] 274 - Part Four;

[0083] 275 - First storage cavity;

[0084] 276 - Second storage cavity;

[0085] 277-Connecting part;

[0086] X - Length direction;

[0087] Y-width direction;

[0088] Z - Thickness direction. Detailed Implementation

[0089] To better understand the technical solution of this application, the embodiments of this application will be described in detail below with reference to the accompanying drawings.

[0090] It should be understood that the described embodiments are merely some, not all, of the embodiments in this application. All other embodiments obtained by those skilled in the art based on the embodiments in this application without inventive effort are within the scope of protection of this application.

[0091] The terminology used in the embodiments of this application is for the purpose of describing particular embodiments only and is not intended to be limiting of this application. The singular forms “a,” “the,” and “the” used in the embodiments of this application and the appended claims are also intended to include the plural forms unless the context clearly indicates otherwise.

[0092] It should be understood that the term "and / or" used in this article is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, or B existing alone. Additionally, the character " / " in this article generally indicates that the preceding and following related objects have an "or" relationship.

[0093] In the description of this application, unless otherwise expressly specified and limited, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance; unless otherwise specified or explained, the term "multiple" refers to two or more; the terms "connected," "fixed," etc., should be interpreted broadly. For example, "connected" can be a fixed connection, a detachable connection, an integral connection, or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0094] As users' demands for viewing experiences gradually increase, large-screen (e.g., 85 inches and above) televisions and other electronic devices are becoming increasingly popular. Taking televisions as an example, newly purchased televisions are usually transported to the user's home with their original packaging, which protects the television. However, televisions wrapped in boxes are quite bulky, making them difficult to move into homes with small entryways.

[0095] To ensure proper delivery, the packaging is usually removed to reduce volume before the TV is brought in, leaving the bare unit unprotected. However, during this process, the TV lacks physical protection, relying solely on the mover's handling to minimize impact. Due to the inherent instability of the handling, bumps and scratches are inevitable, especially around the edges, where the force applied is often concentrated, posing a significant risk of damage.

[0096] Therefore, embodiments of this application provide a protective component that can be used to protect the edges of electronic devices. These electronic devices may include large-sized devices such as televisions, computers, monitors, and electronic clocks. This protective component can also be applied to furniture such as dining tables and tea tables to protect the furniture, or it can be applied to mechanical equipment to protect the mechanical equipment. Figure 1 This is a schematic diagram of the structure of an electronic device provided in an embodiment of this application. For ease of explanation, this embodiment uses an electronic device including... Figure 1 Taking a television as an example, a television may include a length direction X, a width direction Y, and a thickness direction Z. The television includes a screen 11 and a housing 12.

[0097] Figure 2 An exploded view of the protective component and electronic device provided in the embodiments of this application, such as... Figure 2 As shown, in this embodiment, the protective component 2 may include a housing 26 and a protective frame 21. The housing 26 is a structure that provides protection for the electronic device 1 and the protective frame 21. The housing 26 has internal space to accommodate the electronic device 1 and the protective frame 21. The housing 26 may be made of cardboard or plastic material, giving it a certain degree of rigidity and providing effective protection for the internal electronic device 1 and the protective frame 21.

[0098] like Figure 2As shown, the protective frame 21 is a structure that provides protection for the edge parts of the electronic device 1. The protective frame 21 is detachably installed in the housing 26. The protective frame 21 has an unfolded state and a bent state, and can switch between the two states. In actual operation, the protective frame 21 can be manually switched between the unfolded and bent states. The unfolded state refers to the state in which the protective frame 21 is stored in the housing 26, and the protective frame 21 does not need to be bent in the unfolded state. The bent state refers to the state in which the protective frame 21 is removed from the housing 26, and a portion of the protective frame 21 is bent before being installed on the electronic device 1.

[0099] Among them, such as Figure 2 As shown, when the protective frame 21 is in the unfolded state, the protective frame 21 can be stored in the box 26 to provide protection through the box 26, and can move with the box 26 as a whole, making it convenient to move before entering the house. Figure 3 This is a schematic diagram of the protective component provided in the embodiments of this application being installed on an electronic device, such as... Figure 3 As shown, when it is necessary to move the electronic device into the house, the electronic device 1 and the protective frame 21 can be removed from the housing 26, and the protective frame 21 can be manually switched from the unfolded state to the bent state. Then, the protective frame 21 in the bent state can be installed on at least part of the edge of the electronic device 1 so that the protective frame 21 can cover at least part of the edge of the electronic device 1. Of course, in some embodiments, a part of the protective frame 21 can be pre-installed on the electronic device 1, and then the protective frame 21 can be bent on the electronic device 1, and the connection and fixation between the protective frame 21 and the electronic device 1 can be achieved during the bending process.

[0100] like Figure 3 As shown, the protective component 2 may further include a protective plate 22, which can be connected to the protective frame 21. When the protective frame 21 is installed on the electronic device 1, the protective plate 22 can cover the surface of the electronic device 1 used for display, such as the surface of the screen, thereby protecting the screen from scratches and pressure damage during transportation.

[0101] In this embodiment, the protective frame 21 can be stored together with the electronic device 1 in the housing 26 in its unfolded state, allowing for overall transportation and handling with the housing 26. When it is necessary to move the electronic device 1 into the home, the protective frame 21 can be removed from the housing 26 and installed on the edge of the electronic device 1. This provides protection for the edge of the electronic device 1, effectively preventing bumps and knocks during handling. Furthermore, the volume of the protective frame 21 is much smaller than that of the housing 26, reducing the handling space required for home transport. This facilitates smooth transport, reduces the risk of bumps and knocks, and protects the edge of the electronic device 1 from damage. Additionally, the handler can hold the protective frame 21 during handling, distributing the force across it rather than directly onto the edge of the electronic device 1, thus preventing stress concentration and breakage.

[0102] After electronic device 1 is installed in the home, it is typically put into use. Taking a television as an example, the television is usually mounted on a TV wall or placed on a TV cabinet for use. During normal use, the television is generally not stored back in its enclosure 26. Because the enclosure 26 is relatively large and difficult to store, taking up significant indoor space, users usually dispose of it as a waste. However, in special circumstances where the television needs to be moved out of the house, such as during a move or when the television needs to be returned to the factory for repair, the television, without the protection of its enclosure 26, is usually moved out in its bare state. This method of moving the television still carries the risk of damage from bumps and knocks.

[0103] In this embodiment, after the electronic device 1 with the protective frame 21 is moved into the house, there is no need to leave the bulky box 26. The protective frame 21 is much smaller than the box 26, so the protective frame 21 can be removed from the electronic device 1 and stored. The protective frame 21 will not take up too much space. When the electronic device 1 needs to be moved out of the house, the protective frame 21 can be reinstalled on the electronic device 1 to provide protection for the edges of the electronic device 1, which can effectively prevent the electronic device 1 from being bumped and damaged during the process of moving it out of the house.

[0104] In other embodiments, the protective frame 21 can be manufactured on the production line, bent, and installed onto electronic devices 1 such as televisions, and then the electronic device 1 with the protective frame 21 installed can be stored in the housing 26. Alternatively, if the protective device also includes the aforementioned protective plate 22, the protective frame 21 and protective plate 22 can be assembled on the production line and installed onto electronic devices such as televisions, and then the electronic device with the protective frame 21 and protective plate 22 installed can be stored in the housing 26. In this case, the protective frame 21 in the housing 26 is in a bent state. When it is necessary to move the electronic device 1 into the home, the housing 26 can be removed. Since the protective frame 21 and protective plate 22 are already installed on the electronic device 1, the user can directly move the electronic device 1 with the protective frame 21 and protective plate 22 installed into the home, facilitating user operation.

[0105] Figure 4 An exploded view (without showing the housing) of the protective component provided in the embodiments of this application in its unfolded state, as shown below. Figure 4 As shown in the previous description, the protective component 2 may include a protective frame 21 and a protective plate 22, which may be separately manufactured components. The materials of the protective frame 21 and the protective plate 22 may be cardboard, plastic sheet, etc., so that the protective frame 21 and the protective plate 22 have a certain degree of rigidity and can play a reliable protective role.

[0106] like Figure 4 As shown, when the protective frame 21 is in the unfolded state, the protective frame 21 and the protective plate 22 can be stored in the box 26 respectively.

[0107] Figure 5 This is a schematic diagram of the assembly of the protective component provided in the embodiments of this application in a bent state, as shown below. Figure 5 As shown, when the protective frame 21 is in a bent state, the protective plate 22 can be connected to the protective frame 21. For example, Figure 6 An exploded view (box not shown) of the protective component provided in the embodiments of this application in a bent state, as shown below. Figure 6 As shown, the protective plate 22 can be bonded to the protective frame 21. For example, the protective plate 22 can be bonded to the protective frame 21 using double-sided adhesive 23. In some other embodiments, the protective plate 22 can also be bonded to the protective frame 21 by dispensing adhesive. The protective plate 22 can cover the display side of the screen of the electronic device 1 to protect the screen and prevent it from being scratched during transportation.

[0108] Figure 7 A cross-sectional view of the protective plate in the protective device provided in the embodiments of this application, as shown below. Figure 7As shown, the protective plate 22 may have multiple cavities 221. The protective plate 22 is more prone to deformation at the locations with the cavities 221. Therefore, when the side of the electronic device 1 with the screen is subjected to an external impact, the portion of the protective plate 22 with the cavities 221 can deform to absorb and decompose the impact force, thereby preventing excessive impact force from being transmitted to the screen and protecting it. The protective frame 21 can cover at least part of the edge of the electronic device 1 to protect its edges.

[0109] In one embodiment, as described above, the electronic device 1 may include a length direction X, a width direction Y, and a thickness direction Z. The length direction X, the width direction Y, and the thickness direction Z may be perpendicular to each other. The electronic device 1 has a long side 1a in the length direction X and a wide side 1b in the width direction Y. The protective frame 21 may cover the long side 1a and / or the wide side 1b of the electronic device 1.

[0110] Figure 8 This is a front view (box not shown) of a protective component provided in one embodiment of this application, as shown. Figure 8 As shown, by way of example, two protective frames 21 can be provided. The two protective frames 21 can respectively cover the two wide sides 1b of the electronic device 1 and cover at least a portion of the two long sides 1a. The protective frame 21 includes a first segment 211 and a second segment 212. The specific structure of the protective frame 21 will be described in detail below.

[0111] Figure 9 A front view (box not shown) of a protective component provided in another embodiment of this application, as shown. Figure 9 As shown, by way of example, two protective frames 21 can be provided, and the two protective frames 21 can respectively cover the two long sides 1a of the electronic device 1 and at least a portion of the two wide sides 1b.

[0112] Therefore, during handling, the handler can hold the protective frames 21 on opposite sides of the electronic device 1, which facilitates handling. In some embodiments, multiple protective frames 21 can be provided, and each edge of the electronic device 1 can be wrapped by the corresponding protective frame 21, thereby ensuring that the edges of the electronic device 1 are not bumped or knocked.

[0113] Figure 10 This is a schematic diagram of the protective frame in the unfolded state of a protective component provided in one embodiment of this application, as shown below. Figure 10As shown, the protective frame 21 may include a first segment 211 and a second segment 212, with the second segment 212 being foldably connected to the end of the first segment 211. Before the electronic device is moved into the house, the protective frame 21 is in an unfolded state and can be stored in the housing 26. For example, the sum of the lengths of the first segment 211 and the second segment 212 is less than the length of the housing 26, so that the first segment 211 and the second segment 212 can be arranged collinearly in the unfolded state. With the size of the housing 26 remaining unchanged, the space inside the housing 26 can be fully utilized for storage. For example, the protective frame 21 can be stored inside the housing 26 on one side of the electronic device 1.

[0114] In some embodiments, when the protective frame 21 is in the unfolded state, the first segment 211 and the second segment 212 may not be collinear. For example, the first segment 211 and the second segment 212 may form a certain angle, which may be between 160° and 180°. It is understood that when the angle is 180°, the first segment 211 and the second segment 212 are collinear. When the angle is between 160° and 180° but not including 180°, the first segment 211 and the second segment 212 may be nearly collinear, thereby allowing the entire protective frame 21 to be placed on one side of the electronic device 1, which is beneficial for saving space.

[0115] Figure 11 This is a schematic diagram of the protective frame in the bent state of the protective component provided in the embodiments of this application, as shown below. Figure 11 As shown, when the electronic device 1 needs to be moved into the house, the electronic device 1 and the protective frame 21 can be removed from the box 26, and the second segment 212 can be manually bent relative to the first segment 211 so that the shape of the first segment 211 and the second segment 212 can match the outline of the electronic device 1 and can cover the corresponding edge of the electronic device 1.

[0116] In one embodiment, such as Figure 8 As shown, the length of the first segment 211 can be the same as the length of the wide side 1b of the electronic device 1, meaning the first segment 211 can completely cover the first edge. During transport, the handler can adjust the force application position at various points on the first segment 211 to facilitate handling. Simultaneously, during transport, the direction of movement is usually consistent with or nearly consistent with the extension direction of the long side 1a of the electronic device 1. Therefore, during transport, the wide side 1b of the electronic device 1 is more likely to collide with obstacles in the direction of movement compared to the long side 1a. Thus, by ensuring that the first segment 211 completely covers the wide side 1b of the electronic device 1, the risk of damage from impacts can be reduced.

[0117] The length of the second segment 212 can be less than the length of the first segment 211. The second segment 212 and the first segment 211 can be connected to the electronic device 1 in different directions, thereby providing force for connection to the electronic device 1 in different directions and ensuring the overall stability of the protective frame 21 on the electronic device 1.

[0118] The first segment 211 and the second segment 212 can not only cover the corresponding edges of the electronic device 1, but the connection between the first segment 211 and the second segment 212 can also cover the corners of the electronic device 1, thereby preventing the electronic device 1 from being bumped and broken at the edges and corners.

[0119] In one embodiment, such as Figure 8 As shown, two second segments 212 can be provided, with each second segment 212 positioned at one end of the first segment 211. Each second segment 212 covers at least a portion of the opposite edges of the electronic device 1. Specifically, each second segment 212 covers at least a portion of the two long sides 1a of the electronic device 1. Thus, the first segment 211 and the two second segments 212 can connect to three adjacent edges of the electronic device 1, ensuring the stability of the protective frame 21. Furthermore, when the electronic device 1 needs to be placed on the ground or a table during transport, the second segments 212 can also provide support, preventing direct contact between the electronic device 1 and the ground or table, thereby reducing the risk of edge impact to the electronic device 1.

[0120] Figure 12 A front view (box not shown) of a protective component provided in another embodiment of this application, as shown. Figure 12 As shown, for example, four protective frames 21 can be provided, with each protective component 2 positioned at a corresponding corner of the electronic device 1, such that the first segment 211 of each protective frame 21 can cover a portion of the wide side 1b of the electronic device 1, and the second segment 212 can cover a portion of the long side 1a of the electronic device 1. Thus, protection of each edge and corner of the electronic device 1 can be achieved through four protective frames 21.

[0121] In one embodiment, the protective frame 21 can be an integrally molded structure, that is, the first segment 211 and the second segment 212 can be directly molded during the processing of the protective frame 21, thereby ensuring the reliability of the structure, simplifying the process and saving costs.

[0122] In some other embodiments, the second segment 212 can be flexibly connected to the first segment 211 via a connector. The first segment 211 and the second segment 212 are separate structures, meaning they can be manufactured separately, allowing for more flexible storage within the housing 26. Furthermore, the connector can be glue, rivets, staples, etc., which facilitate user operation and ensure a reliable connection between the first segment 211 and the second segment 212.

[0123] Figure 13 This is a front view of the protective frame in the protective component provided in the embodiments of this application, such as... Figure 13 As shown, a notch 213 can be provided between the first segment 211 and the second segment 212, and the second segment 212 bends relative to the first segment 211 through the notch 213. The shape of the notch 213 can be... Figure 13 The notch 213 shown is "V-shaped," but in other embodiments, it can also be "U-shaped," etc. The notch 213 can be directly formed during the molding process of the protective frame 21, and a first segment 211 and a second segment 212 are formed on both sides of the notch 213. The protective frame 21 has less material at the notch 213, making it easier to bend at the notch 213. That is, the second segment 212 can be bent relative to the first segment 211 at the notch 213, thus facilitating the user's bending operation.

[0124] Figure 14 This is a schematic diagram of the protective frame in the unfolded state of a protective component provided in another embodiment of this application, as shown below. Figure 14 As shown, the protective frame 21 includes a first mounting portion 214 and a second mounting portion 215. In the unfolded state, there is an angle between the first mounting portion 214 and the second mounting portion 215. For example, the angle between the first mounting portion 214 and the second mounting portion 215 can be between 90° and 110°. For example, when the angle is 90°, the first mounting portion 214 and the second mounting portion 215 are perpendicular, that is, the cross-sectional shape of the protective frame 21 is "L-shaped".

[0125] Figure 15 This is a schematic diagram of the protective frame in the unfolded state of a protective component provided in another embodiment of this application, as shown below. Figure 15As shown, in the unfolded state, the first mounting portion 214 and the second mounting portion 215 of the protective frame 21 can be flattened and located on the same plane, that is, the surfaces of the first mounting portion 214 and the second mounting portion 215 are coplanar, thereby reducing the thickness of the protective frame 21 and facilitating its storage in the housing. When it is necessary to install the protective frame onto an electronic device, the first mounting portion 214 and the second mounting portion 215 can be appropriately bent so that a certain angle is formed between the first mounting portion 214 and the second mounting portion 215. For example, the first mounting portion 214 and the second mounting portion 215 can be bent as follows: Figure 14 The shape shown, such as an "L-shape," facilitates the installation of the protective frame 21 onto the edge of the electronic device, thereby achieving reliable edge protection. The bending position between the first mounting portion 214 and the second mounting portion 215 may be pre-designed with creases, recesses, or partial cutouts to facilitate bending operations of the first mounting portion 214 and the second mounting portion 215 while ensuring bending accuracy.

[0126] Figure 16 for Figure 3 The enlarged view at point A, as shown Figure 16 As shown, during the assembly of the protective frame 21 and the protective plate 22, the first mounting part 214 is connected to the protective plate 22 to achieve the connection and fixation between the protective plate 22 and the protective frame 21. In one embodiment, the first mounting part 214 and the protective plate 22 can be adhesively connected, thereby facilitating the assembly operation of the protective plate 22 and the protective frame 21. Exemplarily, the side of the first mounting part 214 facing the electronic device screen can be provided with the aforementioned double-sided adhesive 23 (see reference). Figure 6 When the first mounting part 214 and the protective plate 22 are bonded, the release film on the double-sided adhesive can be peeled off, and the first mounting part 214 and the protective plate 22 can be bonded and fixed by the double-sided adhesive.

[0127] like Figure 16 As shown, when the protective component 2 is installed on the electronic device 1, the protective plate 22 can be placed over the screen of the electronic device 1, and the second mounting portion 215 can cover at least a portion of the side surface of the electronic device 1. The side surface of the electronic device 1 refers to the surfaces on both sides along the length direction X and the surfaces on both sides along the width direction Y of the electronic device 1. An edge is formed between the side surface of the electronic device 1 and the surface on the side where the screen is located; this edge and the portion of the electronic device 1 near the edge can be understood as the edge of the electronic device 1. Therefore, the first mounting portion 214 and the second mounting portion 215 can cover the edge of the electronic device 1, effectively preventing damage to the edge of the electronic device 1 from impacts.

[0128] like Figure 16As shown, the protective component 2 also includes a buffer 24 connected to the protective frame 21. When the protective component 2 is installed on the electronic device 1, the protective frame 21 can abut against the electronic device 1 through the buffer 24. The buffer 24 can disperse the impact force transmitted from the outside of the protective component 2 to the electronic device 1, thereby preventing the electronic device 1 from being broken due to excessive impact.

[0129] Among them, the buffer 24 can be polyethylene foam board (EPE). Polyethylene foam board has a stable structure and a certain elastic deformation ability. When subjected to external impact force, polyethylene foam board can deform to absorb and decompose the impact force, thereby preventing electronic device 1 from being subjected to excessive impact and achieving effective protection for electronic device 1.

[0130] Figure 17 This is a schematic diagram of the structure of the protective frame in the bent state in another embodiment of the protective assembly provided in this application, as shown below. Figure 17 As shown in the previous description, the protective frame 21 may include a first mounting portion 214 and a second mounting portion 215. The first mounting portion 214 is used to connect with the protective plate 22, and the second mounting portion 215 can be connected with the buffer member 24. The second mounting portion 215 abuts against at least a portion of the side surface of the electronic device through the buffer member 24. During transportation, the electronic device 1 is usually transported with one side surface facing the transportation direction, which makes the side surface of the electronic device more susceptible to collisions with obstacles in the transportation direction. Therefore, in this embodiment, by providing the buffer member 24 on the side surface of the electronic device, the protection of the side surface of the electronic device can be strengthened, the impact force can be mitigated, and the integrity of the electronic device can be ensured during transportation.

[0131] Figure 18 This is a schematic diagram of the structure of the protective frame in the bent state in another embodiment of the protective assembly provided in this application, as shown below. Figure 18As shown, the protective frame 21 includes a third mounting portion 216, a fourth mounting portion 217, and a fifth mounting portion 218. The third mounting portion 216 and the fourth mounting portion 217 are respectively disposed at opposite ends of the fifth mounting portion 218. The third mounting portion 216 and the fourth mounting portion 217 can both be bent toward the same side of the fifth mounting portion 218, so that the third mounting portion 216, the fourth mounting portion 217, and the fifth mounting portion 218 form a U-shaped cross-section structure, and an installation space is formed between the third mounting portion 216, the fourth mounting portion 217, and the fifth mounting portion 218. When the protective component 2 is installed on the electronic device, the edge portion of the protective plate 22 can be located in the installation space and can be connected to the third mounting portion 216 or the fourth mounting portion 217. The protective frame 21 can cover at least a portion of the edge of the electronic device through the installation space, and the protective plate 22 can cover the screen. The "U-shaped" protective frame 21 can be clamped on both sides of the electronic device along the thickness direction by the third mounting part 216 and the fourth mounting part 217. The third mounting part 216 and the fourth mounting part 217 can be relatively fixed by the static friction between them and the electronic device 1, which facilitates the installation and fixing of the protective component 2 on the electronic device 1, and also ensures the stability of the installation.

[0132] In one embodiment, in the unfolded state, the third mounting portion 216, the fourth mounting portion 217, and the fifth mounting portion 218 can all be located in the same plane, that is, the surfaces of the third mounting portion 216, the fourth mounting portion 217, and the fifth mounting portion 218 are coplanar, thereby reducing the thickness of the protective frame 21 and facilitating storage. When it is necessary to install the protective frame 21 onto an electronic device, the third mounting portion 216 and the fourth mounting portion 217 can be appropriately bent relative to the fifth mounting portion 218, so that the third mounting portion 216, the fourth mounting portion 217, and the fifth mounting portion 218 form a "U-shaped" or approximately "U-shaped" structure, thereby facilitating the installation of the protective frame 21 onto the edge of the electronic device to achieve reliable edge protection for the electronic device. The bending positions between the third mounting part 216 and the fifth mounting part 218, as well as between the fourth mounting part 217 and the fifth mounting part 218, may be designed with creases, indentations, or partial cutouts to facilitate the bending operation of the third mounting part 216 and the fourth mounting part 217, while ensuring bending accuracy.

[0133] In another embodiment, in the unfolded state, the third mounting portion 216 and the fourth mounting portion 217 are respectively angled with the fifth mounting portion 218, so that the third mounting portion 216 and the fourth mounting portion 217 do not need to be manually bent, which facilitates the installation operation of the protective frame 21 onto the electronic device.

[0134] In cases where both the third mounting portion 216 and the fourth mounting portion 217 form an angle with the fifth mounting portion 218, the third mounting portion 216 and the fourth mounting portion 217 may be parallel or non-parallel, depending on the thickness direction Z along the electronic device 1 (refer to...). Figure 1 The shapes of the surfaces on both sides are determined. For example, when the surfaces on both sides of the electronic device along the thickness direction Z are parallel planes, the third mounting portion 216 and the fourth mounting portion 217 can be parallel to each other. For example, when one surface on the electronic device along the thickness direction Z is a plane and the other surface is an arc-shaped surface or a slope, one of the third mounting portion 216 and the fourth mounting portion 217 is a plane, and the other is an arc-shaped surface or a slope that can match and fit with the electronic device 1. In this case, the third mounting portion 216 and the fourth mounting portion 217 may not be parallel.

[0135] Figure 19 for Figure 18 The enlarged view at point B, as shown Figure 18 As shown, the buffer 24 can be disposed on the fifth mounting part 218, and the fifth mounting part 218 can abut against the side of the electronic device 1 through the buffer 24. The double-sided adhesive 23 can be disposed on the surface of the third mounting part 216 located within the mounting space, and the edge area of ​​the protective plate 22 can be bonded and fixed to the third mounting part 216 by the double-sided adhesive 23 after it extends into the mounting space.

[0136] Figure 20 A schematic diagram (casing not shown) illustrating the installation of a protective component onto an electronic device according to another embodiment of this application, as shown. Figure 20 As shown, after the protective component is installed on the electronic device 1, the protective plate 22 and the electronic device 1 can be connected by the connector 25 to ensure the reliability of the overall installation of the protective component on the electronic device 1 and prevent the protective component from falling off. For example, the connector 25 can be adhesive tape. One end of the tape can be adhered to the protective plate 22 near its edge, and the other end can be wrapped around the edge of the electronic device 1 and adhered to the housing on the side of the electronic device 1 opposite to the screen. Thus, the tape ensures the reliable installation of the protective component on the electronic device 1. Furthermore, in some other embodiments, the connector 25 can also be a wire harness. One end of the wire harness can be connected to the protective plate 22, and the other end can be connected to a corresponding structure on the electronic device 1, which can also achieve a reliable connection between the protective component 2 and the electronic device 1.

[0137] Figure 21 This is a schematic diagram of the positioning element in the protective assembly provided in the embodiments of this application, as shown below. Figure 21As shown, the protective assembly also includes a positioning element 27, which can be disposed within the housing. The positioning element 27 has a first storage cavity 275 for storing the electronic device 1. A second storage cavity 276 is provided on the side of the positioning element 27, which can be stored in the protective frame when it is in the unfolded state. The positioning element 27 can be a structure with a certain shape and flexibility; for example, it can be a three-dimensional structure made of foam. The positioning element 27 can support, position, and absorb shock for the electronic device, reducing the impact on the electronic device during transportation and handling before it is brought into the home, thus ensuring the quality of the electronic device. The dimensions of the positioning element 27 and the housing can be designed according to the dimensions of the electronic device. Both the first and second storage cavities 275 and 276 can be formed from the same material as the positioning element 27, without occupying space outside the positioning element 27. This allows for the storage of the protective frame 21 without changing the dimensions of the housing and the positioning element 27.

[0138] Figure 22 An exploded view of a positioning element in an electronic device provided in an embodiment of this application, such as... Figure 21 As shown, the positioning member 27 may include multiple connecting portions, which can surround the aforementioned first receiving cavity 275. For example, four connecting portions may be provided. For ease of explanation, each connecting portion may be a first part 271, a second part 272, a third part 273, and a fourth part 274. The first part 271 and the second part 272 are arranged opposite each other along the length direction X of the electronic device 1, and the third part 273 and the fourth part 274 are arranged opposite each other along the width direction Y of the electronic device 1. The first part 271, the second part 272, the third part 273, and the fourth part 274 surround the first receiving cavity 275 (see reference). Figure 20 Among them, the first part 271, the second part 272, the third part 273 and the fourth part 274 can be independently manufactured components. The first part 271, the second part 272, the third part 273 and the fourth part 274 can be installed on the edge of the electronic device 1 to protect the edge of the electronic device 1, and at the same time, to support and dampen the electronic device 1, ensuring the integrity of the electronic device 1 during transportation and handling before entering the house.

[0139] In other embodiments, the number of connecting parts may be two, three, five or more, and each connecting part can form a first receiving cavity and cover the edge of the electronic device.

[0140] In one embodiment, the connecting portion can be an integrally formed structure, for example, such as... Figure 22As shown, the first part 271, the second part 272, the third part 273, and the fourth part 274 are each individually manufactured integral structures. By assembling them, the first part 271, the second part 272, the third part 273, and the fourth part 274 can surround the edge of the electronic device. At least one connecting portion is provided with a second receiving cavity 276. For example, as shown... Figure 22 As shown, taking multiple connecting parts as a first part 271, a second part 272, a third part 273, and a fourth part 274 as an example, at least one of the first part 271, the second part 272, the third part 273, and the fourth part 274 can be provided with a second storage cavity 276. For example, the second storage cavity 276 is provided on the third part 273. The second storage cavity 276 can be a groove formed on the positioning member 27. The second storage cavity 276 does not need to occupy space other than the positioning member 27, and can achieve storage without changing the size of the positioning member 27 and the box 26.

[0141] In one embodiment, the connecting part can also be a separate structure. Figure 23 This is a schematic diagram of the structure of the connecting portion on the positioning member in a protective assembly provided in one embodiment of this application, as shown below. Figure 23 As shown, exemplarily, the connecting part is used as... Figure 22 Taking the third part 273 shown as an example, the third part 273 includes a first assembly part 273a and a second assembly part 273b, which can be connected by means of adhesive or the like. By making the connecting part include independently processed first and second assembly parts, the manufacturing process can be facilitated. A second storage cavity 276 can be provided on the first assembly part 273a (see reference). Figure 22 Part 276a of the first assembly 273a and the second assembly 273b may be provided with another part 276b of the second storage cavity 276. After the first assembly 273a and the second assembly 273b are connected, the two parts 276a and 276b of the second storage cavity 276 on the first assembly 273a and the second assembly 273b can be joined to form a complete second storage cavity 276, so that the protective frame 21 can be stored in the second storage cavity 276 as a whole.

[0142] like Figure 22 As shown, at least two protective frames 21 can be provided. Multiple of the at least two protective frames 21 can be stacked on top of each other and placed in a second storage cavity 276, so that the protective frame 21 can be easily removed from the positioning member 27 as a whole without disassembling the protective frame 21 at different positions of the positioning member 27, which is convenient for operation.

[0143] Of course, in some other embodiments, at least two protective frames 21 are provided, and a third storage cavity can also be provided on the positioning member 27. The structure of the third storage cavity can be the same as the structure of the second storage cavity 276. At least two of the protective frames 21 are respectively stored in the second storage cavity and the third storage cavity. For example, when there are two protective frames 21 and one second storage cavity 276 and one third storage cavity, one protective frame 21 can be stored in the second storage cavity 276, and the other protective frame can be stored in the third storage cavity, thereby making the storage method of the protective frames 21 more flexible.

[0144] In one embodiment, the protective frame 21 can be folded and housed in the positioning member 27. Figure 24 This is an exploded view of the protective frame and positioning member cooperating in a protective assembly provided in one embodiment of this application, as shown below. Figure 24 As shown, taking the connecting part 277, which is part of the positioning component 27, as an example, the second storage cavity 276 on the connecting part 277 is "C-shaped". That is, the second storage cavity 276 extends continuously on three adjacent surfaces of the connecting part 277 and forms a "C-shape". The bent protective frame 21 is also "C-shaped" and can cooperate with the "C-shaped" second storage cavity 276, so that the entire protective frame 21 can be stored in the second storage cavity 276 in a bent form. Therefore, after the protective frame 21 is taken out of the cabinet, it can be directly installed on the edge of the TV or other equipment without bending, which is convenient for operation.

[0145] Figure 25 This application provides a schematic diagram of the protective components and electronic devices during the storage process, as shown in one embodiment. Figure 25 As shown, the protective frame 21 and protective plate 22 can be stored in the housing 26 along with the electronic device 1 while it is installed on the electronic device 1. The storage method provided in this embodiment can be completed before the device leaves the factory. Therefore, when the user needs to move the device into the home, the electronic device with the protective frame 21 and protective plate 22 installed can be taken out of the housing 26 and directly moved into the home without the need to install the protective frame 21 and protective plate 22 onto the electronic device 1, which facilitates the user's home moving operation.

[0146] This application also provides a protective device, which includes a positioning member and a protective component provided in any embodiment of this application. The positioning member can be the positioning member described in any of the foregoing embodiments and can be used to accommodate electronic devices and a protective frame, which will not be described in detail here.

[0147] This application also provides an electronic device with packaging, wherein the packaging can be a protective device provided in any embodiment of this application. The protective device may include the aforementioned box, protective frame and protective plate. The connection relationship and technical effects between the box, protective frame, protective plate and electronic device are the same as described above, and will not be repeated here.

[0148] The above are merely preferred embodiments of this application and are not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A protective component, characterized in that, include: Box; The protective frame is detachably installed in the housing and is used to switch between the unfolded state and the bent state; When the protective frame is in the unfolded state, it is housed within the housing; when the protective frame is in the bent state, it covers at least a portion of the edge of the electronic device.

2. The protective component according to claim 1, characterized in that, The protective frame includes a first section and a second section, wherein the second section is flexibly connected to the end of the first section; When the protective frame is in the bent state, the first segment covers at least a portion of the first edge on one side of the electronic device, and the second segment covers at least a portion of the second edge on the other side of the electronic device, with the first edge and the second edge being adjacent to each other.

3. The protective component according to claim 2, characterized in that, The second segment is provided in two parts, with each part located at one end of the first segment and covering at least a portion of the edges of opposite sides of the electronic device.

4. The protective component according to claim 2 or 3, characterized in that, The protective frame is integrally molded.

5. The protective component according to claim 2 or 3, characterized in that, The second segment is flexibly connected to the first segment via a connector.

6. The protective component according to claim 3, characterized in that, In the unfolded state, a gap is provided between the first segment and the second segment, and the second segment bends relative to the first segment through the gap.

7. The protective component according to any one of claims 1-3 and 6, characterized in that, It also includes a protective plate, which is connected to the protective frame when the protective frame is in the bent state, and the protective plate covers the side surface of the screen of the electronic device for display.

8. The protective component according to claim 7, characterized in that, The protective frame includes a first mounting part and a second mounting part, and in the unfolded state, there is an angle between the first mounting part and the second mounting part. In the bent state, the first mounting part is connected to the protective plate, and the second mounting part covers at least a portion of the side surface of the electronic device.

9. The protective component according to claim 8, characterized in that, The first mounting part is bonded to the protective plate.

10. The protective component according to claim 7, characterized in that, The protective frame includes a first mounting part and a second mounting part, and in the unfolded state, the first mounting part and the second mounting part are located on the same plane.

11. The protective component according to any one of claims 1-3, 6, 8-10, characterized in that, The protective frame includes a third mounting part, a fourth mounting part, and a fifth mounting part. The third mounting part and the fourth mounting part are respectively disposed at opposite ends of the fifth mounting part, and an installation space is formed between the third mounting part, the fourth mounting part, and the fifth mounting part. In the bent state, the protective frame covers at least a portion of the edge of the electronic device through the mounting space.

12. The protective component according to claim 11, characterized in that, In the unfolded state, the third mounting part, the fourth mounting part, and the fifth mounting part are all located on the same plane; or, In the unfolded state, the third mounting part and the fourth mounting part each have an angle with the fifth mounting part.

13. The protective component according to any one of claims 8-10, characterized in that, The protective plate has multiple cavities.

14. The protective component according to claim 7, characterized in that, The protective plate is connected to the electronic device via a connector.

15. The protective assembly according to claim 14, characterized in that, The connector is an adhesive tape or a wire harness.

16. The protective assembly according to claim 8 or 9, characterized in that, It also includes a buffer element connected to the protective frame, wherein in the bent state, the protective frame abuts against the electronic device through the buffer element.

17. The protective component according to claim 16, characterized in that, The buffer is connected to the second mounting portion, and the second mounting portion abuts against at least a portion of the side surface of the electronic device via the buffer.

18. The protective component according to any one of claims 1-3, 6, 8-10, 12, 14-15, and 17, characterized in that, It also includes a positioning component, which is disposed in the housing and has a first storage cavity for storing the machine body; The positioning component is provided with a second storage cavity, and in the unfolded state, the protective frame is stored in the second storage cavity.

19. The protective assembly according to claim 18, characterized in that, The positioning element includes multiple connecting parts, which together form the first receiving cavity; At least one of the connecting portions is provided with a second receiving cavity.

20. The protective component according to claim 18, characterized in that, The protective frame is provided in at least two forms, and in the unfolded state, a plurality of the components within the at least two protective frames are housed in the second storage cavity; or... The protective frame is provided in at least two parts, and the positioning member is also provided with a third storage cavity. The at least two protective frames are respectively stored in the second storage cavity and the third storage cavity.

21. The protective component according to any one of claims 1-3, 6, 8-10, 12, 14-15, 17, 19-20, characterized in that, The protective frame is provided in at least two parts, and in the bent state, at least two of the protective frames are provided on opposite sides of the electronic device.

22. A protective device, characterized in that, It includes a positioning element and a protective assembly as described in any one of claims 1-21, wherein the positioning element is detachably disposed in a housing containing the protective assembly; The positioning component is provided with a second storage cavity, and in the unfolded state, the protective frame of the protective component is stored in the second storage cavity.

23. An electronic device with packaging, characterized in that, It includes a body and a protective component as described in any one of claims 1-21, wherein the body is detachably disposed in a housing containing the protective component.